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针对异源肽序列产生的与棒状体相关蛋白1结合的单克隆抗体可在体外抑制恶性疟原虫的生长。

Rhoptry-associated protein 1-binding monoclonal antibody raised against a heterologous peptide sequence inhibits Plasmodium falciparum growth in vitro.

作者信息

Moreno R, Pöltl-Frank F, Stüber D, Matile H, Mutz M, Weiss N A, Pluschke G

机构信息

Swiss Tropical Institute, CH-4002 Basel, Switzerland.

出版信息

Infect Immun. 2001 Apr;69(4):2558-68. doi: 10.1128/IAI.69.4.2558-2568.2001.

Abstract

Monoclonal antibodies (MAbs) specific for Plasmodium falciparum rhoptry-associated protein 1 (RAP-1) were generated and tested for inhibition of parasite growth in vitro. The majority of indirect immunofluorescence assay (IFA)-positive MAbs raised against recombinant RAP-1 positions 23 to 711 (rRAP-1(23-711)) recognized epitopes located in the immunodominant N-terminal third of RAP-1. MAbs specific for the building block 35.1 of the synthetic peptide malaria vaccine SPf66 also yielded an IFA staining pattern characteristic for rhoptry-associated proteins and reacted specifically with rRAP-1 and parasite-derived RAP-1 molecules p67 and p82. Cross-reactivity with RAP-1 was blocked by the 35.1 peptide. Epitope mapping with truncated rRAP-1 molecules and overlapping peptides identified the linear RAP-1 sequence Y218KYSL222 as a target of the anti-35.1 MAbs. This sequence lacks primary sequence similarity with the 35.1 peptide (YGGPANKKNAG). Cross-reactivity of the anti-35.1 MAbs thus appears to be associated with conformational rather than sequence homology. While the anti-35.1 MAb SP8.18 exhibited parasite growth-inhibitory activity, none of the tested anti-rRAP-1(23-711) MAbs inhibited parasite growth, independently of their fine specificity for the RAP-1 sequences at positions 33 to 42, 213 to 222, 243 to 247, 280 to 287, or 405 to 446. The growth-inhibitory activity of MAb SP8.18 was, however, accelerated by noninhibitory anti-RAP-1 MAbs. Results demonstrate that in addition to fine specificity, other binding parameters are also crucial for the inhibitory potential of an antibody.

摘要

制备了针对恶性疟原虫棒状体相关蛋白1(RAP-1)的单克隆抗体(MAb),并测试其对体外寄生虫生长的抑制作用。大多数针对重组RAP-1第23至711位(rRAP-1(23-711))产生的间接免疫荧光试验(IFA)阳性单克隆抗体识别位于RAP-1免疫显性N端三分之一区域的表位。针对合成肽疟疾疫苗SPf66的构建模块35.1的单克隆抗体也产生了棒状体相关蛋白特有的IFA染色模式,并与rRAP-1以及寄生虫来源的RAP-1分子p67和p82发生特异性反应。与RAP-1的交叉反应性被35.1肽阻断。用截短的rRAP-1分子和重叠肽进行表位作图确定线性RAP-1序列Y218KYSL222是抗35.1单克隆抗体的靶点。该序列与35.1肽(YGGPANKKNAG)缺乏一级序列相似性。因此,抗35.1单克隆抗体的交叉反应性似乎与构象而非序列同源性有关。虽然抗35.1单克隆抗体SP8.18表现出寄生虫生长抑制活性,但所测试的抗rRAP-1(23-711)单克隆抗体均未抑制寄生虫生长,无论它们对RAP-1第33至42位、213至222位、243至247位、280至287位或405至446位序列的精细特异性如何。然而,非抑制性抗RAP-1单克隆抗体可加速单克隆抗体SP8.18的生长抑制活性。结果表明,除精细特异性外,其他结合参数对于抗体的抑制潜力也至关重要。

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